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Review
. 2017 Jul;29(2):121-144.

Forensic individual age estimation with DNA: From initial approaches to methylation tests

Affiliations
  • PMID: 28691915
Review

Forensic individual age estimation with DNA: From initial approaches to methylation tests

A Freire-Aradas et al. Forensic Sci Rev. 2017 Jul.

Abstract

Individual age estimation is a key factor in forensic science analysis that can provide very useful information applicable to criminal, legal, and anthropological investigations. Forensic age inference was initially based on morphological inspection or radiography and only later began to adopt molecular approaches. However, a lack of accuracy or technical problems hampered the introduction of these DNA-based methodologies in casework analysis. A turning point occurred when the epigenetic signature of DNA methylation was observed to gradually change during an individual´s lifespan. In the last four years, the number of publications reporting DNA methylation age-correlated changes has gradually risen and the forensic community now has a range of age methylation tests applicable to forensic casework. Most forensic age predictor models have been developed based on blood DNA samples, but additional tissues are now also being explored. This review assesses the most widely adopted genes harboring methylation sites, detection technologies, statistical age-predictive analyses, and potential causes of variation in age estimates. Despite the need for further work to improve predictive accuracy and establishing a broader range of tissues for which tests can analyze the most appropriate methylation sites, several forensic age predictors have now been reported that provide consistency in their prediction accuracies (predictive error of ±4 years); this makes them compelling tools with the potential to contribute key information to help guide criminal investigations.

Keywords: Age estimation; DNA methylation; bisulfite conversion; epigenetic age; epigenetic clock; forensic; statistical regression models.

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